cfx-post processor 15.0 (ANSYS inc)
90
Structured Review
ANSYS inc
cfx-post processor 15.0
Cfx Post Processor 15.0, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/post+processor/cfx+post+processor+15+0/pmc06190305-104-132-131
Average 90 stars, based on 1 article reviews
Cfx Post Processor 15.0, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/post+processor/cfx+post+processor+15+0/pmc06190305-104-132-131
Average 90 stars, based on 1 article reviews
cfx-post processor 15.0 - by Bioz Stars,
2026-10
90/100 stars
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Derivative Assay:Article Title: Droplet Breakup Dynamics in Bi-Layer Bifurcating Microchannel Article Snippet: The numerical data were analyzed by the Article Title: Stemness and chemoresistance in epithelial ovarian carcinoma cells under shear stress Article Snippet: The numerical data were subsequently analyzed by the Article Title: Numerical Investigation of Cell Encapsulation for Multiplexing Diagnostic Assays Using Novel Centrifugal Microfluidic Emulsification and Separation Platform Article Snippet: The average velocity, U , of centrifugally-pumped liquid in a channel depends on, the rotational speed Ω , radial location of the fluid reservoirs, channel geometry, and fluidic properties ( i.e. , dynamic viscosity η , density ρ , etc. ) and can be derived as [ ]: (10) U = D h 2 ρ Ω 2 r ̄ Δ r 32 η c where r ̄ is the average distance of the liquid in the channels from the center of the disc, Δ r is the radial extent of the liquid, and c is the length of the liquid in the channel (see c).The simulations were performed using numerical grids composed of hexahedron elements generated by Article Title: Numerical Investigation of Cell Encapsulation for Multiplexing Diagnostic Assays Using Novel Centrifugal Microfluidic Emulsification and Separation Platform Article Snippet: Article Title: Thermal Effect on Deformation of Nanofluid-Encapsulated Double Emulsion Droplets Flowing in a Constricted Microchannel Article Snippet: Double emulsions have been intensively used as a template to form core/shell structured microcapsules encapsulating and releasing a substance of interest in a controllable way for wide spectrum of chemical and biological applications.. Herein a numerical model was established to investigate the thermal effect on breakup dynamics of a double emulsion flowing through a microchannel with a constricted segment which mimics the structure of microcapillaries using two groups of cases.. In the first group, double emulsion was formed with water dispersed in oil which is surrounded by water (W/O/W); and in the second group, double emulsion was formed with water dispersed in oil which is surrounded by nanofluids where single-wall carbon nanotubes (SWCN) was dispersed in an ethylene glycol (EG) solution with volume fraction of 0.05% (W/O/SWCN-EG). Generated:Article Title: Droplet Breakup Dynamics in Bi-Layer Bifurcating Microchannel Article Snippet: The numerical data were analyzed by the Article Title: Stemness and chemoresistance in epithelial ovarian carcinoma cells under shear stress Article Snippet: The numerical data were subsequently analyzed by the Article Title: Numerical Investigation of Cell Encapsulation for Multiplexing Diagnostic Assays Using Novel Centrifugal Microfluidic Emulsification and Separation Platform Article Snippet: The average velocity, U , of centrifugally-pumped liquid in a channel depends on, the rotational speed Ω , radial location of the fluid reservoirs, channel geometry, and fluidic properties ( i.e. , dynamic viscosity η , density ρ , etc. ) and can be derived as [ ]: (10) U = D h 2 ρ Ω 2 r ̄ Δ r 32 η c where r ̄ is the average distance of the liquid in the channels from the center of the disc, Δ r is the radial extent of the liquid, and c is the length of the liquid in the channel (see c).The simulations were performed using numerical grids composed of hexahedron elements generated by Article Title: Numerical Investigation of Cell Encapsulation for Multiplexing Diagnostic Assays Using Novel Centrifugal Microfluidic Emulsification and Separation Platform Article Snippet: Article Title: Thermal Effect on Deformation of Nanofluid-Encapsulated Double Emulsion Droplets Flowing in a Constricted Microchannel Article Snippet: Double emulsions have been intensively used as a template to form core/shell structured microcapsules encapsulating and releasing a substance of interest in a controllable way for wide spectrum of chemical and biological applications.. Herein a numerical model was established to investigate the thermal effect on breakup dynamics of a double emulsion flowing through a microchannel with a constricted segment which mimics the structure of microcapillaries using two groups of cases.. In the first group, double emulsion was formed with water dispersed in oil which is surrounded by water (W/O/W); and in the second group, double emulsion was formed with water dispersed in oil which is surrounded by nanofluids where single-wall carbon nanotubes (SWCN) was dispersed in an ethylene glycol (EG) solution with volume fraction of 0.05% (W/O/SWCN-EG). |
